5033111 *DRAIN, WATER INLET JOHNSON
J10BL4SUM, J10EL4SDA, J10EL4SRC, J10R4SDM, J10R4SNF, J10R4SR, J10R4STC, J10R4SUB, J10RL4SDM, J10TBL4SDE, J10TBL4SUD, J10TE4SDM, J15EL4SDC, J15EL4SUR, J15R4SDM, J15R4SNF, J15R4SR, J15R4STC, J15R4SUB, J15RL4SDM, J15RL4SR, J15TE4SDM, J15TE4SUB
DRAIN
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$27.99
27-09-2023
0.2204[0.10] Pounds
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Boat Motor 5033109 17450-93960 93960 Housing Water Inlet + Drain 17453-93901 5033111 For Johnson Evirude OMC Suzuki Outboard DT 9.9hp 15hp 2/4 stroke Engine
100% Aftermarket Made in Taiwan Quality || For Suzuki Outboard PN: 17450-93940, 17450-93960, 17450-93931, 17453-93901, 17453-93900 Drain (Please check part number before purchase, important!!) || For Johnson Evinrude OMC Outboard Part number: 5033109, 5033111 Drain || Housing, Water Inlet (Water pump) || Boat Motor for Outboard Engine
100% Aftermarket Made in Taiwan Quality || For Suzuki Outboard PN: 17450-93940, 17450-93960, 17450-93931, 17453-93901, 17453-93900 Drain (Please check part number before purchase, important!!) || For Johnson Evinrude OMC Outboard Part number: 5033109, 5033111 Drain || Housing, Water Inlet (Water pump) || Boat Motor for Outboard Engine
Compatible models:
BRP JOHNSON entire parts catalog list:
- WATER PUMP » 5033111
J10EL4SRC 2004
J10R4SDM 2006
J10R4SNF, J10RL4SNF, J10TE4SNF, J10TEL4SNF 2002
J10R4SR, J10RL4SR, J10TBL4SR, J10TE4SR, J10TEL4SR 2004
J10R4STC, J10RBL4STS, J10REL4STS, J10RL4STC, J10TBL4STC, J10TE4STC, J10TEL4STC 2003
J10R4SUB, J10RL4SUB 2007
J10RL4SDM 2006
J10TBL4SDE 2006
J10TBL4SUD, J10TE4SUB, J10TEL4SUB 2007
J10TE4SDM, J10TEL4SDM 2006
J15EL4SDC 2006
J15EL4SUR 2007
J15R4SDM 2006
J15R4SNF, J15RL4SNF, J15TE4SNF, J15TEL4SNF 2002
J15R4SR, J15TE4SR, J15TEL4SR 2004
J15R4STC, J15RL4STC, J15TE4STC, J15TEL4STC 2003
J15R4SUB, J15RL4SUB 2007
J15RL4SDM 2006
J15RL4SR 2004
J15TE4SDM, J15TEL4SDM 2006
J15TE4SUB, J15TEL4SUB 2007
Information:
Illustration 1 g06471531Reference: For more information, refer to supplemental video "C15 Petroleum Engine - Fuel System" on Caterpillar Channel1.Note: Click or copy the following link into a web browser (a CWS login is required to access Caterpillar Channel1), or scan the following QR code using a QR enabled device.https://channel1.mediaspace.kaltura.com/media/1_9h4192o3
Illustration 2 g06611358General Information
Illustration 3 g06600801
Fuel system schematic
(1) Fuel supply line
(2) Electronic unit injectors
(3) Fuel gallery
(4) Electronic Control Module (ECM)
(5) Fuel pressure sensor
(6) Fuel temperature sensor
(7) Pressure regulating valve
(8) Secondary fuel filter
(9) Fuel priming pump
(10) Fuel transfer pump
(11) Primary fuel filter
(12) Fuel tankThe fuel supply circuit is a conventional design for engines with electronic unit injection. A fuel tank (12) is used to store the fuel prior to use by the engine. A primary fuel filter/water separator (11) is placed into the fuel supply circuit in order to remove large debris from the fuel. This debris may have entered the fuel tank during fueling. The debris may have also entered the fuel tank through the vent for the fuel tank. The primary filter element also separates water from the fuel. The water is collected in the bowl at the bottom of the primary fuel filter/water separator.Fuel is drawn from the fuel tank by the fuel transfer pump (10). The fuel transfer pump is a gear pump with fixed clearances. The fuel transfer pump incorporates an internal relief valve that protects the fuel system from extreme pressure. In the case of extreme pressure, fuel is redirected back to the inlet of the fuel transfer pump. There are internal check valves that are also incorporated into the fuel transfer pump. An inlet check valve prevents fuel from draining back to the fuel tank while the fuel transfer pump is not in operation. An outlet check valve is used in order to prevent pressurized fuel leakage back through the pump. The fuel transfer pump is located in the front of the engine. The fuel transfer pump is driven by the front gear train.Note: The inlet fuel temperature to the fuel transfer pump must not exceed 79 °C (175 °F) when the engine has reached normal operating temperature. Fuel temperatures above 79 °C (175 °F) will reduce the life of the fuel transfer pump check valves. The fuel efficiency and the engine power output are reduced when the fuel temperature increases from 30 °C (86 °F) to 70 °C (158 °F). The fuel heaters should be turned "OFF" during warm weather operating conditions.Fuel from the fuel transfer pump flows to the fuel filter base. The fuel flows through cored passages in the fuel filter base. The fuel priming pump (9) is mounted on the fuel filter base. The fuel priming pump is used in order to pump the fuel manually into the fuel system after the system, or parts of the system have been drained. The fuel priming pump is used in order to refill the fuel system after air has been introduced into the system. For more information on priming the fuel system, refer to Testing and Adjusting, "Fuel System - Prime".As the fuel flows through cored passages in the fuel filter base, the fuel is directed into a 2 micron fuel filter (8). The fuel is filtered in order to remove small abrasive particles that will cause premature wear to fuel system components. Fuel flows out of the fuel filter and returns to the passages in the fuel filter base. Prior to exiting the fuel filter base, the fuel pressure and the fuel temperature is sampled by the fuel pressure sensor (5) and by the fuel temperature sensor (6). The signals that are generated by the sensors are used by the engine control in order to monitor the condition of the engine components. This information is also used to adjust the fuel delivery of the engine in order to optimize efficiency.The fuel flows from the fuel filter base to the Electronic Control Module (ECM) (4). The pressurized fuel is used in order to cool the electronic components that are in the ECM. Excessive heat will damage the electronic components in the ECM. The electronics are used to control engine operation.The fuel is then directed through the fuel supply line (1) to fuel manifold (3) that runs the length of the cylinder head. The fuel enters the cylinder head at the front of the engine. A continuous flow of fuel is supplied to the electronic unit injectors (2) in order to perform the following tasks:
Supply fuel for injection
Remove excessive heat from the injectors.
Remove air that may accumulate in the fuel system.The excess fuel flow that pumped through the system exits the cylinder head near the rear of the engine.The fuel exits the fuel gallery and returns to the fuel filter base. A pressure regulating valve (7) that is located in the fuel filter base regulates the pressure for the fuel system. A sufficient amount of back pressure is maintained in the system in order to ensure a continuous availability of fuel to the electronic unit injectors.Fuel Heaters
Fuel heaters prevent the waxing of the fuel in cold weather. The engine does not dissipate enough heat in order to prevent waxing during cold-weather conditions. Heaters that are not thermostatically controlled can heat the fuel in excess of 65 °C (149 °F). High fuel temperatures can have the following effects:
Reduced engine efficiency
Fuel pump damage
Premature wearNote: Fuel heaters without thermostatic controls must never be used.The two types of fuel heaters that can be used: thermostatically controlled and self-adjusting.Fuel System Electronic Control Circuit
Illustration 4 g01423612
Electronic governor
(13) Signals to the electronic unit injectors
(14) Fuel injection control
(15) Fuel position
(16) Electronic governor
(17) Desired rpm
(18) Coolant temperature
(19) TC for No. 1 cylinder
(20) Fuel Ratio Control (FRC) fuel position
(21) Rated fuel position
(22) Fuel Control Relay (FCR) maps
(23) Torque maps
(24) Engine speed/timing sensor
(25) Engine speed/timing signal interpreter
(26) Engine rpm
(27) Coolant temperature sensor
(28) Boost pressure sensor
(29) Boost pressureThe injection pump, the fuel lines, and the nozzles that are used in the traditional Caterpillar diesel engines have been replaced with an electronically controlled, mechanically actuated electronic unit injector in each
Parts drain JOHNSON:
5035609